Temperature-programmed desorption (TPD) experiments in surface science are usually analyzed using the Polanyi–Wigner equation and/or transition-state theory. These methods are far from straightforward, and the determination of the pre-exponential factor is often problematic. We present a different method based on equilibrium thermodynamics, which builds on an approach previously used for TPD by Kreuzer et al. (Surf. Sci.1988). Equations for the desorption rate are presented for three different types of surface–adsorbate interactions: (i) a 2D ideal hard-sphere gas with a negligible diffusion barrier, (ii) an ideal lattice gas, that is, fixed adsorption sites without interaction between the adsorbates, and (iii) a lattice gas with a distribu...
Thermal desorption spectroscopy is often used to determine the activation energy of desorption of an...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...
Basics 1. Idea, desorption, experimental, example 2. Coverage determination, site occupation and war...
Temperature-programmed desorption (TPD) experiments in surface science are usually analyzed using th...
Recovery of the desorption activation energy distribution from the experimental temperature programm...
Temperature Programmed Desorption (TPD) methods are powerful tools for characterizing gas-solid inte...
grantor: University of TorontoA method is presented for predicting the values of temperatu...
We have performed exact classical rate calculations to compute adsorption and desorption rate consta...
To find desorption pre-exponential factors from temperature-programmed desorption (TPD) spectra, we ...
We present a technique for computing by first-principles simulation the absolute desorption rate gam...
We present a scheme to extract the adsorption energy, adsorbate interaction parameters and the satur...
As a first step in the microscopic study of dynamic processes on surfaces and at interfaces, we have...
In this paper we have investigated problems that arise when analyzing TPD spectra of desorption proc...
DFT calculations are used to explain states in TPD spectra by relating the differential adsorption e...
Adsorption and desorption represent the initial processes of the interaction of gas species with the...
Thermal desorption spectroscopy is often used to determine the activation energy of desorption of an...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...
Basics 1. Idea, desorption, experimental, example 2. Coverage determination, site occupation and war...
Temperature-programmed desorption (TPD) experiments in surface science are usually analyzed using th...
Recovery of the desorption activation energy distribution from the experimental temperature programm...
Temperature Programmed Desorption (TPD) methods are powerful tools for characterizing gas-solid inte...
grantor: University of TorontoA method is presented for predicting the values of temperatu...
We have performed exact classical rate calculations to compute adsorption and desorption rate consta...
To find desorption pre-exponential factors from temperature-programmed desorption (TPD) spectra, we ...
We present a technique for computing by first-principles simulation the absolute desorption rate gam...
We present a scheme to extract the adsorption energy, adsorbate interaction parameters and the satur...
As a first step in the microscopic study of dynamic processes on surfaces and at interfaces, we have...
In this paper we have investigated problems that arise when analyzing TPD spectra of desorption proc...
DFT calculations are used to explain states in TPD spectra by relating the differential adsorption e...
Adsorption and desorption represent the initial processes of the interaction of gas species with the...
Thermal desorption spectroscopy is often used to determine the activation energy of desorption of an...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...
Basics 1. Idea, desorption, experimental, example 2. Coverage determination, site occupation and war...